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Micro-optical design of a three-dimensional microlens scanner for vertically integrated micro-opto-electro-mechanical systems

机译:用于垂直集成微光机电系统的三维微透镜扫描仪的微光学设计

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This paper presents the optical design of a miniature 3D scanning system, which is fully compatible with the vertical integration technology of micro-opto-electro-mechanical systems (MOEMS). The constraints related to this integration strategy are considered, resulting in a simple three-element micro-optical setup based on an afocal scanning microlens doublet and a focusing microlens, which is tolerant to axial position inaccuracy. The 3D scanning is achieved by axial and lateral displacement of microlenses of the scanning doublet, realized by micro-electro-mechanical systems microactuators (the transmission scanning approach). Optical scanning performance of the system is determined analytically by use of the extended ray transfer matrix method, leading to two different optical configurations, relying either on a ball lens or plano-convex microlenses. The presented system is aimed to be a core component of miniature MOEMS-based optical devices, which require a 3D optical scanning function, e.g., miniature imaging systems (confocal or optical coherence microscopes) or optical tweezers. (C) 2015 Optical Society of America
机译:本文介绍了微型3D扫描系统的光学设计,该系统与微光电系统(MOEMS)的垂直集成技术完全兼容。考虑到与该集成策略有关的约束,从而基于对焦点位置不精确的无焦点扫描微透镜双合透镜和聚焦微透镜建立了一个简单的三元素微光学装置。 3D扫描是通过扫描双合透镜的微透镜的轴向和横向位移来实现的,该位移由微机电系统微致动器实现(透射扫描方法)。该系统的光学扫描性能是通过使用扩展的射线传输矩阵方法来分析确定的,这取决于球形透镜或平凸微透镜,从而导致两种不同的光学配置。提出的系统旨在成为基于微型MOEMS的光学设备的核心组件,这些微型设备需要3D光学扫描功能,例如微型成像系统(共焦或光学相干显微镜)或光学镊子。 (C)2015年美国眼镜学会

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